EP3106089A2

System for localizing markers or tissue structures within a body

Abstract

Apparatus, systems, and methods are provided for localizing lesions within a patient's body, e.g., within a breast. The system may include one or more markers implantable within or around the target tissue region, and a probe for transmitting and receiving electromagnetic signals to detect the one or more markers. During use, the marker(s) are into a target tissue region, and the probe is placed against the patient's skin to detect and localize the market(s). A tissue specimen, including the lesion and the marker(s), is then removed from the target tissue region based at least in part on the localization information from the probe.

EP3106089A2, drawing sheet 1
Sheet 1 of 46

Term

3.8 yearsto projected expiry

Projected expiry 25 June 2030, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

15 claims: 9 independent, 6 dependent

  1. 1
    A system for localization of a target tissue region within a patient's body, comprising:a probe (30) comprising one or more antennas (32, 34) for transmitting electromagnetic signals into a patient's body and receiving reflected signals from the patient's body, the probe (30) analyzing the reflected signals to identify one or more objects within the patient's body;and a marker (320) sized for implantation within a patient's body, the marker (320) comprising an active reflector to enhance identification of the marker by the probe, wherein the marker (320) comprises an electronic circuit that modulates incident signals from the probe (30) striking the marker (320), such that the marker provides an active reflector marker, and such that reflected signals from the marker (320) enhance identification by the probe (30).
  2. 5
    The system of any preceding claim , wherein the electronic circuit imposes a phase shift on the reflected signals, the probe (30) configured to identify the phase shift to distinguish the marker (320) from other objects in the patient's body.
  3. 6
    The system of any preceding claim, wherein the probe (30) is configured for transmitting ultrawide band ("UWB") signals, and wherein the electronic circuit modulates the UWB signals such that the reflected signals have a relatively narrow band.
  4. 7
    The system of any preceding claim, wherein the electronic circuit comprises one or more very low power diodes and/or FET transistors.
  5. 8
    The system of any preceding claim, wherein the marker is biased to assume a nonlinear shape yet is resiliently flexible to allow the core member to be straightened to facilitate introduction of the marker into a target tissue region.
  6. 9
    The system of any preceding claim, further comprising a delivery device (260, 360) for introducing the marker (320) into a patient's body.
  7. 11
    The system of any preceding claim, wherein the probe comprises an output device (38) that provides spatial information based on the spatial relationship of the marker relative to the probe.
  8. 14
    The system of any preceding claim, wherein the probe (30) comprises a processor (36), the processor (36) configured for automatically identifying the marker (320) from data obtained using the one or more antennas (32, 34) and for determining spatial information based on the spatial relationship of the marker (320 relative to the probe (30).
  9. 15
    The system of any preceding claim, wherein the probe (30) comprises a portable device having a first end (30a) configured to be placed against tissue of a patient's body, thereby orienting the one or more antennas (32, 34) towards tissues within the patient's body.